Revisiting the Role of Valeric Acid in Manipulating Ulcerative Colitis

Author:

Liu Moting12,Zhang Yao3,Liu Jia4,Xiang Caigui12,Lu Qiukai12,Lu Huimin12,Yang Tao12,Wang Xiaohan12,Zhang Qingli4,Fan Chen1,Feng Chunlan1,Zou Duowu3,Li Heng1ORCID,Tang Wei12ORCID

Affiliation:

1. Laboratory of Anti-inflammation and Immunopharmacology, Shanghai Institute of Materia Medica, Chinese Academy of Sciences , Shanghai 201203 , China

2. School of Pharmacy, University of Chinese Academy of Sciences , Beijing 100049 , China

3. Department of Gastroenterology, Ruijin Hospital Affiliated to Shanghai Jiao Tong University School of Medicine , Shanghai 200025 , China

4. Institutional Technology Service Center, Shanghai Institute of Materia Medica, Chinese Academy of Sciences , Shanghai, 201203 , China

Abstract

Abstract Background Ulcerative colitis (UC) is characterized by a complicated interaction between mucosal inflammation, epithelial dysfunction, abnormal activation of innate immune responses, and gut microbiota dysbiosis. Though valeric acid (VA), one type of short-chain fatty acids (SCFAs), has been identified in other inflammatory disorders and cancer development, the pathological role of VA and underlying mechanism of VA in UC remain under further investigation. Methods Studies of human clinical specimens and experimental colitis models were conducted to confirm the pathological manifestations of the level of SCFAs from human fecal samples and murine colonic homogenates. Valeric acid–intervened murine colitis and a macrophage adoptive transfer were applied to identify the underlying mechanisms. Results In line with gut microbiota dysfunction in UC, alteration of SCFAs from gut microbes were identified in human UC patients and dextran sodium sulfate –induced murine colitis models. Notably, VA was consistently negatively related to the disease severity of UC, the population of monocytes, and the level of interluekin-6. Moreover, VA treatment showed direct suppressive effects on lipopolysaccharides (LPS)-activated human peripheral blood mononuclear cells and murine macrophages in the dependent manner of upregulation of GPR41 and GPR43. Therapeutically, replenishment of VA or adoptive transfer with VA-modulated macrophages showed resistance to dextran sodium sulfate–driven murine colitis though modulating the production of inflammatory cytokine interleukin-6. Conclusions In summary, the research uncovered the pathological role of VA in modulating the activation of macrophages in UC and suggested that VA might be a potential effective agent for UC patients.

Funder

National Natural Science Foundation of China

Publisher

Oxford University Press (OUP)

Reference56 articles.

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